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紫外线照射对β-磷酸三钙作为骨移植替代物的影响。

Effects of ultraviolet irradiation on beta-tricalcium phosphate as a bone graft substitute.

机构信息

Department of Oral and Maxillofacial Surgery, Division of Clinical Medicine, Graduate Faculty of Interdisciplinary Research, University of Yamanashi, 1110 Shimokato, Chuo, Yamanashi, 409-3898, Japan.

Suwa Factory ORC Manufacturing Co., Ltd, 4896 Tamagawa, Chinoshi, Nagano, Japan.

出版信息

Odontology. 2022 Oct;110(4):682-696. doi: 10.1007/s10266-022-00704-w. Epub 2022 Mar 24.

Abstract

Surface modification of various materials using ultraviolet (UV) irradiation improves their wettability. The purpose of this study was to investigate the wettability of a β-tricalcium phosphate (TCP) surface and the composition changes and bioactivity of β-TCP after UV irradiation. We applied 172 nm UV treatment to a β-TCP surface and measured the contact angle before and after UV irradiation. Energy-dispersive X-ray and Fourier transform infrared spectroscopy examinations were performed on the β-TCP disk with or without UV treatment. In an adhesion test of bone marrow cells using β-TCP disks with and without UV irradiation, cell attachment was measured 10, 30, 50, and 70 h after β-TCP insertion. UV-irradiated β-TCP osteogenesis and absorption of bone substitutes were evaluated using hematoxylin and eosin and tartrate-resistant acid phosphatase (TRAP) staining in a rabbit sinus model. The contact angle on the TCP surface decreased from 70° to 10° owing to UV irradiation. Conversely, UV irradiation did not change the composition of carbon, oxygen, and phosphorus. In the cell adhesion test, UV-irradiated β-TCP significantly increased cell adhesion compared with UV-unirradiated β-TCP after 10 to 30 h of culture. In the rabbit sinus model, TRAP staining showed that UV-irradiated β-TCP significantly increased the number of TRAP-positive cells compared with unirradiated β-TCP granules in the central part of β-TCP. Our results indicate that the UV irradiation of β-TCP improves its clinical utility for surgical bone augmentation in the oral and maxillofacial region.

摘要

采用紫外线(UV)照射对各种材料进行表面改性可以提高其润湿性。本研究旨在研究β-磷酸三钙(TCP)表面的润湿性以及 UV 照射后β-TCP 的成分变化和生物活性。我们对β-TCP 表面进行了 172nm 的 UV 处理,并测量了 UV 照射前后的接触角。对经过或未经 UV 处理的β-TCP 圆盘进行了能量色散 X 射线和傅里叶变换红外光谱检查。在使用经过或未经 UV 照射的β-TCP 盘的骨髓细胞黏附试验中,在β-TCP 插入后 10、30、50 和 70 小时测量了细胞附着。使用苏木精和伊红以及抗酒石酸酸性磷酸酶(TRAP)染色在兔窦模型中评估了 UV 照射的β-TCP 成骨和骨替代物的吸收。由于 UV 照射,TCP 表面的接触角从 70°降低到 10°。相反,UV 照射并未改变碳、氧和磷的组成。在细胞黏附试验中,与未经 UV 照射的β-TCP 相比,UV 照射的β-TCP 在培养 10 至 30 小时后显著增加了细胞黏附。在兔窦模型中,TRAP 染色显示,与未辐照的β-TCP 颗粒相比,UV 辐照的β-TCP 在β-TCP 的中心部分显著增加了 TRAP 阳性细胞的数量。我们的结果表明,β-TCP 的 UV 照射提高了其在口腔颌面区域手术骨增强中的临床实用性。

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